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NMX‑FTS‑800 / Rev 00 / Eye‑safe laser instrumentation / Noida · India 2026 · Product Page
NMX-FTS-800 · ENGINEERED TO ORDER — FIRING TRAINING SIMULATORS

The range is software. The marksmanship is real.

Firing training & tactical engagement simulators — indoor marksmanship lanes where a projector and an infrared sensing device score every trigger press against ballistics simulated to 2,000 m; and field instrumentation where harnesses and eye‑safe laser transmitters referee force‑on‑force exercises across a 4 × 4 km tracked box, from −10 to +55 °C and up to 10,000 ft. Engineered to order — no delivered installation is claimed on this page.

Illustrative image, not a delivered installation — an indoor firing-simulator hall: a wide projection screen showing an open terrain scene, empty firing-point mats on the floor facing it, and a projector rig with sensing optics mounted overhead; no weapons are present
Fig · 01 A marksmanship simulator lane — screen, sensing optics and firing points — illustrative, not a delivered installation
Engagement bands
100–800m · programmable
Laser emission
72–110µW · eye-safe
Tracked exercise box
4×4km · near real time
Harness set
<3kg · body + helmet
Environment
+55°C · to −10 · 10,000 ft
ISO 9001 / 14001 Engineered to order DGAQA-registered design house Force-on-force OEM partnership under MoU Noida · India
01
Overview

A live round tells you where it went. The trace tells you why.

Ammunition is the most expensive teacher in the armoury, and the least articulate: a hole in a target reports the result and none of the causes. Instrumented training keeps the weapon, the stance and the stress — and adds the data.

Illustrative image, not a delivered installation — an instructor and after-action-review room: two desks with dual monitors glowing with soft colour-mapped exercise graphics, a communication rack beside them and acoustic wall panels; screens carry no readable text and no people are present
Fig · 02 The instructor console — where every trigger press becomes a record — illustrative, not a delivered installation

Indoors, the range becomes software. A projector fills a screen up to the 35 ft class with terrain and targets at depicted ranges from 5 to 2,000 m; its built-in infrared sensing device follows the laser dot of every weapon on the firing point, detects the instant of trigger, and hands the coordinates to the instructor console. Ballistics — range, velocity, time of flight, trajectory, even wind deflection you can watch arrive at the target — are simulated per weapon class, with rain, fog, light and moon phase on demand. Recoil is generated wirelessly from compressed-gas magazines; the hall never holds a live round.

In the field, the referee becomes instrumentation. Tactical engagement simulation puts an eye-safe laser transmitter on each service weapon and a sensor harness on each trainee. Engagements register through 360° on body and head, discriminated as kill, injury or near-miss; a hit deactivates the casualty’s transmitter and sounds the harness alarm; the umpire gun can revive, reallocate ammunition or record medical attention. A man-portable control station under 20 kg tracks every participant across up to 4 × 4 km and replays the whole engagement at any speed, fire tracks included.

And most of the demand is not for new halls. Three of the five recent programmes behind this page are upgradations — new projectors and sensing, new software generations, recoil conversions and consoles fitted into simulator halls that already exist. The lessons of those bids, and a technology partnership with a specialist force-on-force simulation OEM, are what this page offers.

Marksmanship is a conversation between habit and feedback. The simulator’s only job is to make the feedback honest, instant and cheap enough to repeat ten thousand times.
Engineered to Order

Sized to the hall, the fleet and the exercise

Lane counts, harness fleets, exercise areas and module scope follow the user’s establishment — a four-lane hall, a company-scale engagement set, or both. The envelopes on this page are drawn from the governing specifications of recent Indian programmes Neometrix has bid and been technically evaluated against; no delivered firing-simulator installation is claimed.

Instrumentation Pedigree

The measurement habits are delivered fact

Neometrix has delivered a 512-channel universal automatic test system and a 256-channel avionics tester to the Indian Air Force, and PXI-based drive-and-control instrumentation to a helicopter MRO establishment — multi-channel, event-accurate systems of the same discipline that scores a firing lane. Simulation engines and laser engagement modules come through an OEM partnership under MoU; Neometrix engineers the system around them.

Training System Only

No weapons on this page — by design

Nothing here fires. Transmitters mount on the service weapons the user already holds and actuate from dry and blank firing; recoil comes from compressed gas; programmes and customers are referenced at service level only. What Neometrix supplies is optics, lasers, sensing, radio, software and scoring — the training system, complete.

02
Architecture

Two ranges, one instrumentation discipline.

Indoors, the loop runs projector → screen → sensing → console. In the field it runs transmitter → harness → radio → control station. Both end the same way: in a record an instructor can replay.

FIG · 03SYSTEM ARCHITECTURE · MARKSMANSHIP LANE · ENGAGEMENT INSTRUMENTATION · EXERCISE CONTROL · AFTER-ACTION REVIEW
FIRING TRAINING & TACTICAL ENGAGEMENT SIMULATORS · ARCHITECTURE NMX-FTS-800 · FIG 03 A · THE INDOOR LANE — MARKSMANSHIP PROJECTOR + IR SENSING full-HD · tracks every laser dot IR return PROJECTION SCREEN · to the 35 ft class · targets 5–2,000 m aim · dry & blank fire FIRING POINT lying · kneeling · standing compressed-gas recoil trigger-point coordinates recoil & position sync INSTRUCTOR CONSOLE 4 lanes · 12 modules · scenario builder + video editor wind · rain · fog · light · moon phases · fault injection hall from 25 × 20 × 12 ft · UPS 2.2–3 kVA B · THE FIELD SET LASER TRANSMITTER < 500 g · IR + visible zero bands ~100–800 m by class 72–110 µW · eye-safe coded IR SENSOR HARNESS body + helmet · < 3 kg 360° · kill / injury / near-miss hit → alarm · transmitter off UMPIRE GUN · 1.5 kg CLASS revive · reprogram · allot ammo medical-attention record authority DATA RADIO NET 2 km radius · rechargeable · 8 h events near-real-time -10 to +55 °C to 10,000 ft CONTROL STATION · < 20 kg · MAN-PORTABLE tracking all participants · 2×2 to 4×4 km box 2–3 km from road head · ≥ 8 h without logistics out-of-range fire · umpire counts · tamper events C · THE SHARED RECORD lane records field records AFTER-ACTION REVIEW — SCORING · FIRE TRACKS FIRER → TARGET · TWO-WAY RECORDS · REPLAY AT ANY SPEED indoors: firing-group analysis · hold-and-aim trace — field: 4 × 4 km event map · tamper logged to the second
Fig · 03 Left, the indoor lane: projector, IR sensing and recoil support around the firing point. Right, the field set: harnesses, umpire gun and radio net around the control station. Below both, the shared record — scoring, replay, analysis
Arc · 01

The Marksmanship Lane

Full-HD projection to the 35 ft screen class, IR sensing of every weapon’s laser dot, four lanes to a console with mixed weapon classes on one detail, firing from lying, kneeling and standing. Twelve training modules run from grouping to judgemental video; the video editor turns the user’s own footage into scored scenarios.

Arc · 02

Engagement Instrumentation

Body + helmet harness under 3 kg, sensors over the vital organs, 360° registration, kill / injury / near-miss with audio and visual indication. Transmitters under 500 g carry an IR engagement laser and a visible zeroing laser, programmable across 100–800 m bands — and go silent when their owner is declared hit.

Arc · 03

Exercise Control

A control station under 20 kg deployed 2–3 km from the road head, eight hours without logistics, tracking all participants in near real time across 2 × 2 to 4 × 4 km on a 2 km-radius data net. The umpire gun (1.5 kg class) revives, reprograms, allots ammunition and records medical attention — authority, instrumented.

Arc · 04

After-Action Review

Two-way records of every engagement — who fired what, at whom, from where, in range or out of it — with fire tracks from firer to target, tamper events logged to the second, and replay at any speed, individually or collectively. Indoors the same discipline yields firing-group analysis with a hold-and-aim trace of the barrel before each shot.

Have a simulator, upgradation or engagement-training requirement? Send it across — clause-by-clause compliance matrix within two working days · [email protected]
Send specification
03
Specifications

The reference envelope.

Figures below are composited from the governing specifications of the recent programmes this page is built on — stated as the envelope Neometrix engineers against, not as a delivered installation.

Illustrative image, not a delivered installation — tactical engagement instrumentation laid out on a table: a camouflage sensor vest with small dome sensors, a helmet band with sensor pods, a compact display unit and a charging rack holding battery packs; no weapons are present
Fig · 04 Harness, helmet band, display unit and charging — the wearable half of the engagement set — illustrative, not a delivered installation

Where firing simulators actually disappoint

Scenario libraries that only rehearse the demonstration; harnesses that cannot tell an umpire’s reset from a trainee’s tampering; control stations that need a vehicle and a generator to referee an exercise the troops walked into; and upgradations that replace a projector while leaving ten-year-old software to score it.

The envelope here answers each: end-user scenario authoring with a video editor and reactive 3-D targets; tamper logging that knows the difference and timestamps both; a referee that fits in a backpack and lasts the exercise; and upgradation scoped as a system — optics, sensing, software, recoil and records together.

Full specification — expand
SystemFiring training & tactical engagement simulators — indoor marksmanship lanes, force-on-force instrumentation, range upgradation and guided-missile gunnery trainers · design, engineering, supply, installation, integration, commissioning, training and support
Marksmanship LanesProjection screen to the 35 ft class · full-HD projector with built-in IR sensing of each weapon’s laser dot, trigger-point coordinates to the console · 4 lanes per console typical, mixed weapon classes on one detail · depicted ranges 5–2,000 m per lane or all lanes · hall from 25 × 20 × 12 ft
Training SoftwareTwelve modules — squad post, grouping, moving basic / advanced, static, snapshot, user-defined snapshot, customised firing, range firing, annual range courses, tactical engagement, judgemental video · scenario builder + video editor (impact regions on user footage) · reactive 3-D humans, vehicles and structures · central-server sync with local fallback
Ballistics & EnvironmentRange, velocity, time of flight and trajectory per weapon class · wind with deflection shown at the target, rain, fog with visibility set in metres, dawn-to-night light with moon phases · all fire modes incl. burst · lying / kneeling / standing position sync · fault injection to test the firer, not just teach
Recoil & Power (Indoor)Wireless recoil generation · compressed-gas magazines charged from an air-cylinder unit · dry and blank-fire actuation · 220–240 V 50 Hz · UPS 2.2–3 kVA, ≥30 min · 18–24 V SMPS distribution · hall environment 0–50 °C, 80–95 % RH non-condensing
Engagement HarnessBody + helmet harness < 3 kg with LCD input-output device (≥ 4 × 2 in) · sensors over all vital organs, 360° registration on body and head · kill / injury / near-miss with hit-zone visual + audio · rugged to running, debussing, crawling, jumps from 6 ft and rolling · tamper-proof, umpire-vs-trainee tamper distinguished and logged
Laser Transmitter< 500 g, weapon-mounted · IR engagement laser + visible zeroing laser (2 × 2 ft zeroing target) · eye-safe 72–110 µW per the governing specification · single / burst from dry and blank fire · engagement bands programmable ∼100–800 m by weapon class · deactivates on kill; pickup re-association; multi-weapon association per trainee · no cross-kill at 1 m harness spacing at maximum range
Umpire Gun1.5 kg class with battery · reset / re-activation · battery-replacement authentication · individual reprogramming within effective range · ammunition allotment · medical-attention record · 24 h standby battery
Exercise ControlControl station < 20 kg, man-portable · deployable 2–3 km from road head for ≥ 8 h with no logistic support · near-real-time tracking of all participants, 2 × 2 km baseline to 4 × 4 km upgraded envelope · data radio, 2 km radius · ≥ 1.8 GHz / 8 GB / 500 GB console class
Records & AARTwo-way kill / injury / near-miss records for both sides · weapon type used by and against · out-of-range fire identified and recorded · shots per weapon with hits and misses · umpire reactivation counts · fire track firer → target · tamper log to date-hour-minute-second · replay at user-defined speed, individual and collective · firing-group analysis with hold-and-aim trace indoors · trainee score history under instructor user groups
BatteriesRechargeable, 24 h standby, hot-swap with data retention · manufactured and commercially available in India · chargers in scope
Environment (Field)−10 to +55 °C · altitude to 10,000 ft · jungle, high-altitude, mountain, desert and plains · military-standard wiring and connectors · transport-secure packing
InstallationModular plug-and-play · first installation by 2 engineers within 3 months · user-level re-installation by 5 trained personnel within 5 hours · software updates through warranty / AMC · bilingual (English-Hindi) handbooks · software V&V and reliability documentation
Guided-Missile GunneryTrainer variant for anti-tank guided missile (ATGM) crews — sight picture, tracking discipline, launch-sequence drills, instructor scoring and replay · scoped qualitatively at design review; no platform is named or implied on this page
SourcingSimulation engines and laser engagement modules through a technology partnership with a specialist force-on-force simulation OEM under MoU · Neometrix engineers the system — integration, projection and sensing fit-out, recoil and gas services, radio net, installation, documentation, training and lifetime support · no weapons are supplied; instrumentation fits the user’s service weapons
StatusEngineered to order — reference envelope from recent programme specifications · no delivered firing-simulator installation is claimed · three of the five underlying programmes are upgradations of existing halls
04
Variants

One discipline, four programmes.

Tenders call these firing simulators, tactical engagement systems, reflex ranges or gunnery trainers. What changes is where the trigger is pressed — a hall, a valley, or a sight unit.

Var · 01

Indoor Marksmanship Ranges

Projection lanes for pistols, carbines, rifles and section machine guns — grouping to judgemental video, four lanes to a console, recoil without a single live round. For training centres, academies and unit ranges.

Var · 02

Range Upgradation Programmes

New projection, IR sensing, software generation, recoil conversion and consoles into existing halls — the hall and the habit survive, the electronics move a decade forward. Three of the five programmes behind this page are exactly this.

Var · 03

Tactical Engagement Sets

Harness fleets, transmitters, umpire guns, radio net and control station for force-on-force exercises at section to company scale — scored through 4 × 4 km, replayed to the second, from plains to 10,000 ft.

Var · 04

Guided-Missile Gunnery Trainers

Crew trainers for anti-tank guided missile gunnery — sight picture, tracking discipline and launch sequence drilled against moving imagery, scored and replayed. Scoped qualitatively at design review; no platform is named here.

05
Applications

Where it applies.

Anywhere marksmanship or tactics must be taught faster than ammunition, ranges and safety templates allow.

A · 01Armed-forces training establishments — marksmanship halls & annual range courses
A · 02Field formations — force-on-force exercises with instrumented after-action review
A · 03Central armed police & state police — reflex ranges, judgemental & counter-insurgency scenarios
A · 04Industrial & installation security forces — guard-force qualification without live ranges
A · 05Existing simulator halls — upgradation of projection, sensing, software & recoil
A · 06Missile-crew gunnery schools — tracking & launch-sequence trainers
06
FAQ

Common questions.

Plain-language answers from the engineering team.

Q · 01 Are the lasers safe for the people in the exercise?
Yes — that constraint is written into the governing specification itself, which bounds transmitter emission to the 72–110 microwatt envelope precisely so that beams received at any engagement distance, including through magnifying optics, remain safe for the eyes of participants. Two lasers do two jobs: an infrared beam carries the engagement codes, and a low-power visible beam exists only for zeroing the transmitter to the weapon’s sights against a 2 × 2 ft target. The indoor lanes are gentler still — the projector’s sensing device reads a low-power aiming dot off the screen. Eye safety is a design input verified at acceptance, not a procedure the exercise has to remember.
Q · 02 Can an existing simulator hall be upgraded rather than replaced?
Usually, yes — and usually it should be. The civil works, the hall geometry, the firing points and the training habit are the expensive, durable part; the electronics are the part a decade ages. An upgradation replaces the projector with a full-HD unit carrying built-in IR sensing, refreshes the application software and its scenario library, converts recoil to wireless compressed-gas magazines, and replaces consoles and the central-server link — inside the hall that already exists (the reference envelope needs 25 × 20 × 12 ft). Three of the five recent programmes this page is built on are exactly such upgradations, which is why the scope is treated as a first-class variant rather than an afterthought.
Q · 03 Do you supply weapons with the simulators?
No. Nothing on this page is a weapon, and no weapon is part of any Neometrix simulator supply. The instrumentation is designed to fit the service weapons the user already holds: transmitters clamp to them and actuate from dry or blank firing; recoil in the indoor lanes comes from compressed-gas magazines; harnesses, umpire guns, consoles and radios are training electronics. The specifications these systems answer are written for real in-service weapons across pistol, carbine, rifle and machine-gun classes — but the weapons remain the user’s, under the user’s custody, throughout. That boundary is deliberate, and it is why this page names no weapon and shows none in any image.
Q · 04 How does force-on-force scoring actually work?
Each trigger press on a blank or dry-fired weapon makes its transmitter emit a coded infrared burst whose reach is programmed to that weapon class’s effective range — roughly 100 m for a side-arm band up to 800 m for tripod-mounted machine-gun bands. Harness sensors laid over the vital organs, registering through 360° on body and head, decode what arrives: who fired, from what weapon class, and whether the result is a kill, an injury or a near-miss. A kill silences the casualty’s own transmitter and sounds the harness alarm; only the umpire gun can revive, reallocate ammunition or log medical attention. Every event — including out-of-range fire and any tampering, umpire’s or trainee’s, distinguished — lands timestamped at the control station, which draws fire tracks from firer to target and replays the engagement at any speed.
Q · 05 What environments are the systems specified for?
Two different envelopes for two different rooms. The indoor lanes live in a hall: 0–50 °C, 80–95 % relative humidity non-condensing, mains power with a 2.2–3 kVA UPS carrying at least half an hour. The field sets live wherever the exercise goes: minus 10 to plus 55 °C, altitudes to 10,000 ft, jungle, high-altitude, mountain, desert and plains, with military-standard wiring and connectors, and ruggedisation proven against the life of a harness — quick running, debussing, crawling, jumps from six feet, rolling. Batteries are rechargeable, hot-swappable with data retained, hold 24 hours on standby, and are deliberately specified as manufactured and commercially available in India, so endurance never depends on an import.
Q · 06 What here is delivered fact, and what is engineered to order?
Delivered fact: Neometrix multi-channel test and simulation systems in service with the Indian Air Force — a 512-channel universal automatic test system and a 256-channel avionics tester — PXI-based drive-and-control instrumentation at a helicopter MRO establishment, and a maintenance footprint spanning 37 air stations; the company is DGAQA-registered for the design, development and production of aerospace systems and test benches. Also fact: full technical bids and clause-by-clause compliance submitted on recent firing-simulator and tactical-engagement programmes, and a technology partnership under MoU with a specialist force-on-force simulation OEM whose engagement systems serve multiple state militaries. Engineered to order: everything this page describes as a system for you — no delivered firing-simulator installation is claimed, customers are referenced at service level only, and lane counts, fleets and exercise areas are sized at design review.
Related

The small-arms domain from Neometrix.

Training systems, ammunition manufacturing lines and the environmental chambers that qualify fielded equipment — engineered as one house at Noida.

Browse all Neometrix product lines.

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The Projects desk replies within two working days with a clause-by-clause compliance matrix and a budgetary quotation. Write to [email protected] or use the form.

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ISO 9001 / 14001 ENGINEERED TO ORDER — FIRING TRAINING SIMULATORS EYE-SAFE LASER INSTRUMENTATION · TRAINING SYSTEMS ONLY ENGINEERED IN NOIDA · INDIA
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